Research Center, Dongnam Institute of Radiological & Medical Sciences, Busan 619-953, Korea.
Division of Radiation Biomedical Research, Korea Institute of Radiological & Medical Sciences, 75 Nowon-ro, Nowon-gu, Seoul 01812, Korea.
Int J Mol Sci. 2021 Nov 27;22(23):12834. doi: 10.3390/ijms222312834.
The adverse effects of radiation are proportional to the total dose and dose rate. We aimed to investigate the effects of radiation dose rate on different organs in mice. The mice were subjected to low dose rate (LDR, ~3.4 mGy/h) and high dose rate (HDR, ~51 Gy/h) radiation. LDR radiation caused severe tissue toxicity, as observed in the histological analysis of testis. It adversely influenced sperm production, including sperm count and motility, and induced greater sperm abnormalities. The expression of markers of early stage spermatogonial stem cells, such as Plzf, c-Kit, and Oct4, decreased significantly after LDR irradiation, compared to that following exposure of HDR radiation, in qPCR analysis. The compositional ratios of all stages of spermatogonia and meiotic cells, except round spermatid, were considerably reduced by LDR in FACS analysis. Therefore, LDR radiation caused more adverse testicular damage than that by HDR radiation, contrary to the response observed in other organs. Therefore, the dose rate of radiation may have differential effects, depending on the organ; it is necessary to evaluate the effect of radiation in terms of radiation dose, dose rate, organ type, and other conditions.
辐射的不良影响与总剂量和剂量率成正比。我们旨在研究辐射剂量率对小鼠不同器官的影响。将小鼠暴露于低剂量率(LDR,约 3.4 mGy/h)和高剂量率(HDR,约 51 Gy/h)辐射下。LDR 辐射会导致严重的组织毒性,如睾丸组织学分析所示。它会对精子产生产生不利影响,包括精子计数和活力,并导致更多的精子异常。与 HDR 辐射相比,LDR 照射后 qPCR 分析显示,早期精原干细胞标志物 Plzf、c-Kit 和 Oct4 的表达明显下降。在 FACS 分析中,除了圆形精子细胞外,所有精原细胞和减数分裂细胞阶段的组成比例都明显降低。因此,LDR 辐射引起的睾丸损伤比 HDR 辐射更严重,这与其他器官的反应相反。因此,辐射的剂量率可能会根据器官的不同而产生不同的影响;有必要根据辐射剂量、剂量率、器官类型和其他条件来评估辐射的影响。